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, the proteolytic mechanisms involved in dental pulp inflammation, particularly in various 2D/3D models. The postdoctoral researcher will produce bioactive protein fragments and characterise their roles in dental
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for iPSC cell culture, maintenance, methodology, and data analysis. You will contribute to team efforts related to stem cell biology, the development of new biological assays, and 3D cell culture on 3D
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. Experience with quantitative image analysis and deep learning tools for segmentation and classification (e.g., Cellpose, napari, scikit-image, PyTorch). Experience with 3D culture systems, organoids
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the scope of these missions, the candidate will be expected to: - Produce granular samples bonded by a solidified foam, using different types of binders and grains. - Implement 3D imaging techniques (X-ray
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for iPSC cell culture, maintenance, methodology, and data analysis. You will contribute to team efforts related to stem cell biology, the development of new biological assays, and 3D cell culture on 3D
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related to staff position within a Research Infrastructure? No Offer Description Project title: Wear and Fracture Testing Models for Dental Crowns: From Oral Tribology to 4D Micro-CT Failure Analysis Dental
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model of the product and its constituent parts. developing and maintaining 3D models of parts, assemblies, and overall product layouts; creating and maintaining large assemblies; establishing the product
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) analysis of thermal events, subsidence, as well as modelling and production of H₂ in high-temperature contexts (WP2); 3) development of 3D sedimentary basin models integrating these data, and restore
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zooarchaeology. • Demonstrable research experience in the prehistory of the La Garrotxa volcanic region, particularly in relation to Neolithisation processes. • Proven expertise in the zooarchaeological analysis
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Summary Seeking one motivated MS engineering student to support a research project on real-time refractory thickness measurement using thermal sensing, inverse heat-conduction model, and 3D